3 edition of Quantum-based electronic devices and systems found in the catalog.
Quantum-based electronic devices and systems
Includes bibliographical references.
|Statement||editors Mitra Dutta, Michael A. Stroscio.|
|Series||Selected topics in electronics and systems -- vol. 14|
|Contributions||Dutta, Mitra., Stroscio, Michael A., 1949-|
|LC Classifications||QC685 .Q83 1998|
|The Physical Object|
|Pagination||ix, 312 p. :|
|Number of Pages||312|
device, device to system or system to system . For interconnecting applications, zigzag GNR is proposed for the future generation of VLSI circuits, due to its metallic property [5, 48].Author: Rafael Vargas-Bernal. View Randall Jensen’s profile on LinkedIn, the world's largest professional community. Conducted research in computer simulation of electronic devices, circuits, and systems. This book's Title: Computer Software Professional.
Phonons in nanostructures: Device applications. (Eds.), Quantum-based Electronic Devices and Systems, World Scientific, Singapore, New Jersey, London, Hong Kong, ; This book focuses on. Search the world's most comprehensive index of full-text books. My library.
Advanced Semiconductor Heterostructures Novel Devices Potential Device Applications and Basic Prope Michael A. Stroscio, Mitra Dutta This volume provides valuable summaries on many aspects of advanced semiconductor heterostructures and highlights the great variety of semiconductor heterostructures that has emerged since their original conception. In addition, the Center’s pioneering efforts in quantum-based electronic devices and systems put Michigan at the leading edge of technology that even now, nearly two decades later, remains at the forefront of engineering research.
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This volume includes highlights of the theories and experimental findings that underlie essential phenomena occurring in quantum-based devices and systems as well as the principles of operation of selected novel quantum-based electronic devices and by: Summary: This volume includes highlights of the theories and experimental findings that underlie essential phenomena occurring in quantum-based devices and systems as well as the principles of operation of selected novel quantum-based electronic devices and systems.
One of the first books to thoroughly examine the subject, Quantum Computing Devices: Principles, Designs, and Analysis covers the essential components in the design of a "real" quantum computer.
It explores contemporary and important aspects of quantum computation, particularly focusing on the role of quantum electronic devices as quantum by: Quantum-based electronic devices and systems. that underlie essential phenomena occurring in quantum-based devices and systems, J.-P.
Lu and J. Han --Scattering time engineering in quantum-based electronic devices / J.-P. Leburton --Room temperature silicon quantum devices / R. Tsu --Single electron devices / D.D. Smith. A number of the emerging approaches to creating new types of quantum-based electronic devices and systems are also discussed.
Contents: Architectures for Quantum-Based Systems: Chemically Self-Assembled Nanoelectronic Computing Networks (S Bandhopadhyay et al.) Quantum-Dot Cellular Automata Devices and Architectures (W Porod).
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Try our new marketplace. This volume includes highlights of the theories and experimental findings that underlie essential phenomena occurring in quantum-based devices and systems as well as the principles of operation of selected novel quantum-based electronic devices an.
Principles of Quantum Electronics - Kindle edition by Marcuse, Dietrich. Download it once and read it on your Kindle device, PC, phones or tablets. Use features like bookmarks, note taking and highlighting while reading Principles of Quantum by: Quantum mechanical devices utilize the wave nature of electrons for their operations whenever the electron mean-free-path exceeds the appropriate dimensions of the device structure.
Some of the issues such as the tunneling time, the reduction of the dielectric constant and the drastic increase in the binding energy of dopants are discussed. scattering time engineering in quantum-based electronic devices JEAN-PIERRE LEBURTON Department of Electrical and Computer Engineering, Beckman Institute and Coordinated Science Laboratory, University of Illinois at Urbana-Champaign, Beckman Institute, North Mathews Avenue, Urbana, ILUSA.
This article emphasizes device applications of confined phonons in GaAs-based systems and provides a brief discussion of carrier-LO-phonon interactions in bulk würtzite structures. This account also includes discussions on the use of metal-semiconductor heterointerfaces to reduce scattering and on the role of phonons in Fröhlich, deformation and piezoelectric interactions in electronic and optoelectronic structures; specific device applications highlighted here include quantum cascade.
Superlattices and Microstructures, Vo% 2, No. 1, QUANTUM-BASED ELECTRONIC DEVICES Michael A. Stroscio Electronics Division, U.S. Army Research Office, Research Triangle Park, NCUSA and Department of Electrical and Computer Engineering, North Carolina State University Raleigh, NCUSA (Received 15 October by John D.
Dow) Microstructure Cited by: 3. Principles of Quantum Electronics Paperback – Novem by Dietrich Marcuse (Author)Author: Dietrich Marcuse. It is strongly expected that further research on this class of quasi-2D/3D HOIS mixtures will give rise to novel quantum based electronic devices.
View Show abstract. Terahertz Sensing Technology, Vol. 1: Electronic Devices and Advanced Systems Technology (Selected Topics in Electronics & Systems, Vol.
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EPMD’s goal is to advance the frontiers of micro- nano- and quantum-based devices operating within the electromagnetic spectrum and contributing to a broad range of application domains including information and communications, imaging and sensing, healthcare, Internet of Things, energy, infrastructure, and manufacturing.
Electronic Measurements. Introduction to Vectors. Electronic Measurements: Exercises and Assignments. Introduction to Power Electronics. Essential Electromagnetism: Solutions.
Electrical Power. Heating, Ventilation & Air-Conditioning. Introduction to Digital Signal and System Analysis. Learn Calculus 2 on Your Mobile Device. Electromagnetism. quantum based electronic devices and systems Once equilibrium is established in any electronic device the chemical po- tential µ will volume includes highlights of the theories and experimental findings that underlie essential phenomena occurring in quantum-based devices and onic devices based on quantum.
Search result for michael-a-stroscio: Quantum-based Electronic Devices And Systems, Selected Topics In Electronics And Systems, Vol 14(), Quantum Heterostructures(), Introduction to Optical and Optoelectronic Properties of Nanostructures(), Quantum Heterostructures(), Advanced Semiconductor Heterostructures: Novel Devices, Potential Device.Quantum technology is an emerging field of physics and engineering, which relies on the principles of quantum physics.
It is about creating practical applications—such as quantum computing, quantum sensors, quantum cryptography, quantum simulation, quantum metrology and quantum imaging—based on properties of quantum mechanics, especially quantum entanglement, quantum superposition and.In this book, leading experts on quantum dot theory and technology provide comprehensive reviews of all aspects of quantum dot systems.
The following topics are covered: (1) energy states in quantum dots, including the effects of strain and many-body effects; (2) self-assembly and self-ordering of quantum dots in semiconductor systems; (3) growth, structures, and optical properties of III.